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Intelligent Gain Flattening of FMF Raman Amplification by Machine Learning Based Inverse Design.

, , , , and . OFC, page 1-3. IEEE, (2020)

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Editorial: Special Issue Öptical Signal Processing Technologies for Communication, Computing, and Sensing Applications"., , , and . Sensors, 23 (5): 2606 (March 2023)Compressed Nonlinear Equalizers for Optical Interconnects: Efficiency and Stability., , , , , and . OFC, page 1-3. IEEE, (2020)Intelligent Gain Flattening of FMF Raman Amplification by Machine Learning Based Inverse Design., , , , and . OFC, page 1-3. IEEE, (2020)Second-order few-mode distributed Raman amplifier for mode-division multiplexing transmission., , , , and . OFC, page 1-3. IEEE, (2017)100-Gbps 100-m Hollow-Core Fiber Optical Interconnection at 2-Micron Waveband by PS-DMT., , , , , , and . OFC, page 1-3. IEEE, (2020)Mode-Multiplexed Transmission Over 36 Spatial Modes of a Graded-Index Multimode Fiber., , , , , , , , , and 13 other author(s). ECOC, page 1-3. IEEE, (2018)C + L Band Distributed Few-mode Raman Amplification with Flattened Gain for Mode-division-multiplexed Optical Transmission over 75-km Few-mode Fiber., , , , , , , and . OFC, page 1-3. IEEE, (2018)Nonlinear Pre-Distortion Based on Indirect Learning Architecture and Cross-Correlation-Enabled Behavioral Modeling for 120-Gbps Multimode Optical Interconnects., , , , and . OFC, page 1-3. IEEE, (2020)Demonstration of an Ultra-Compact Bend for Four Modes Based on Pixelated Meta-Structure., , , , , , and . OFC, page 1-3. IEEE, (2020)Special Issue on Enabling Technology in Optical Fiber Communications: From Device, System to Networking., , , and . Sensors, 21 (6): 1969 (2021)